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High Temperature Heat Pump Integration using Zeotropic Working Fluids for Spray Drying Facilities

机译:采用非共沸工作流体喷雾干燥设备的高温热泵一体化

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摘要

This paper presents an analysis of high temperature heat pumps in the industrial sector and demonstrates the approach of using zeotropic mixtures to enhance the overall efficiency. Many energy intensive processes in industry, such as drying processes, require heat at a temperature above 100 °C and show a large potential to reuse the excess heat from exhaust gases. This study analyses a heat pump application with an improved integration by choosing the working fluid as a mixture in such a way, that the temperature glide during evaporation and condensation matches the temperature glide of the heat source and sink best possibly. Therefore, a set of six common working fluids is defined and the possible binary mixtures of these fluids are analyzed. The performance of the fluids is evaluated based on the energetic performance (COP) and the economic potential (NPV). The results show that the utilization of mixtures allows a heat pump application to preheat the drying air to 120 °C with a COP of 3.04 and a NPV of 0.997 Mio. €, which could reduce the natural gas consumption by 36 %.
机译:本文对工业领域的高温热泵进行了分析,并论证了使用共沸混合物来提高整体效率的方法。工业上许多耗能的过程,例如干燥过程,都需要在高于100°C的温度下加热,并且具有很大的潜力来重复利用废气中的多余热量。这项研究通过选择一种工作流体作为混合物来分析具有改进集成度的热泵应用,以使蒸发和冷凝过程中的温度滑移与热源和散热器的温度滑移最匹配。因此,定义了一组六种常见的工作流体,并分析了这些流体的可能的二元混合物。根据能量性能(COP)和经济潜力(NPV)评估流体的性能。结果表明,利用混合物可以使热泵应用将干燥空气预热至120°C,COP为3.04,NPV为0.997Mio。 €,这可以减少36%的天然气消耗。

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